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首页> 外文期刊>Materials Chemistry Frontiers >A surface precleaning strategy intensifies the interface coupling of the Bi2O3/TiO2 heterostructure for enhanced photoelectrochemical detection properties
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A surface precleaning strategy intensifies the interface coupling of the Bi2O3/TiO2 heterostructure for enhanced photoelectrochemical detection properties

机译:一个表面预清洗战略加剧了接口耦合的Bi2O3 /二氧化钛异质结构的增强光电化学检测性能

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The interfacial coupling effect plays a crucial role in tailoring the photoelectrochemical performance of heterostructured photocatalysts. However, it is an urgent need but challenging to intensify the interfacial coupling effect of heterojunctions. Herein, we proposed the surface precleaning of n-type TiO2 via a facile low-temperature hydrogenation to facilitate strong coupling with p-type Bi2O3 (Bi2O3/c-TiO2) and thus disruptively accelerate the electron transfer and electron–hole pair separation. The comparative studies of uncleaned Bi2O3/TiO2 and Bi2O3/c-TiO2 heterostructures by X-ray photoelectron spectroscopy revealed an unneglected valence change and thus a highly strong coupling effect between Bi2O3 and the cleaned TiO2 originating from a possible weakening role of the nitrogen species adsorbed on the surface of pristine TiO2 for the interfacial coupling effect. When integrated into a photoelectrochemical sensor, Bi2O3/c-TiO2 presented both significantly high detection photocurrent response and selectivity for organics in a buffer solution. The current response of the as-built Bi2O3/c-TiO2 was two-fold higher than that of uncleaned Bi2O3/TiO2 and was even almost five-fold that of bulk TiO2. We believe that this work will provide new perspectives and insights into the construction of efficient heterojunctions for impressive applications in photoelectrochemical detection.
机译:界面耦合效应起着至关重要的在定制光电化学作用用性能的催化剂。然而,这是一个急需但具有挑战性加强的界面耦合效应垂直。通过一个简单预清洗的n型二氧化钛低温加氢,以促进强耦合和p型Bi2O3 (Bi2O3 / c-TiO2)因此带加速电子传输和电子空穴对分离。不清洁Bi2O3 /二氧化钛和比较研究通过x射线Bi2O3 / c-TiO2异质结构光电子能谱显示一个unneglected价变化,因此一个高度Bi2O3和强耦合的影响清洗二氧化钛来自一个可能氮吸附物种的削弱作用原始表面的二氧化钛界面耦合效应。光电化学传感器Bi2O3 / c-TiO2提出了相当高的检测光电流响应和选择性有机物在缓冲溶液中。响应的竣工Bi2O3 / c-TiO2双重高于未弄清洁的Bi2O3 /二氧化钛甚至是散装二氧化钛的近五倍。我们相信,这项工作将提供新的为建设观点和见解高效的垂直的令人印象深刻应用光电化学检测。

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